Horn R, Miller J J
J Neurobiol. 1977 Sep;8(5):399-415. doi: 10.1002/neu.480080502.
The soma but not the axon of the giant neuron, R2, of Aplysia can generate an all-or none Ca spike in Na-free or TTX-containing medium (Junge and Miller, 1974). Extracellular axonal recordings made at several distances from the soma provide evidence that the transition in ability to fire a spike in Na-free medium occurs within the first 250 micrometer of the axon. Application of 25 mM TEA-Br to the bathing medium causes a more than tenfold increase in the duration of the somatic action potential. The duration of the axonal action potential in TEA decreases with distance from the soma. At distances greater than 3 mm from the soma this concentration of TEA causes little or no increase in the duration of the axon spike. The effect of 25 mM TEA on both the soma and proximal axon is blocked reversibly by 30 mM CoCl2 or 1 mM CdCl2. The duration of the somatic action potential in TEA increases with an increase in Ca concentration of the bath. At a constant concentration of Na, the voltage level of the somatic plateau increases with Ca concentration in the manner predicted for a Ca electrode. In the presence of 11 mM Ca2+ the potential of the plateau is relatively insensitive to Na concentration. The TEA plateau in R2 reveals a prolonged voltage-dependent permeability to Ca. The duration of the plateau may indicate the degree of Ca activation during a spike.
海兔巨神经元R2的胞体而非轴突,在无钠或含河豚毒素的培养基中能够产生全或无的钙峰(Junge和Miller,1974)。在距胞体不同距离处进行的细胞外轴突记录表明,在无钠培养基中产生峰电位的能力转变发生在轴突的前250微米内。向浸泡培养基中加入25 mM溴化四乙铵会使胞体动作电位的持续时间增加十倍以上。在含溴化四乙铵的情况下,轴突动作电位的持续时间随距胞体距离的增加而减小。在距胞体大于3毫米的距离处,这种浓度的溴化四乙铵对轴突峰电位的持续时间几乎没有增加或没有增加。25 mM溴化四乙铵对胞体和近端轴突的作用可被30 mM氯化钴或1 mM氯化镉可逆性阻断。含溴化四乙铵时胞体动作电位的持续时间随浴液中钙浓度的增加而增加。在钠浓度恒定的情况下,胞体平台期的电压水平随钙浓度的增加而增加,其方式符合钙电极的预测。在存在11 mM Ca2+的情况下,平台期电位对钠浓度相对不敏感。R2中的溴化四乙铵平台期显示出对钙的电压依赖性通透性延长。平台期的持续时间可能表明峰电位期间钙激活的程度。